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COM and ActiveX interfaces allow behind the scenes data transfer and tight integration between the two programs. This interface allows CST MWS users to take advantage of the extensive data manipulation, signal processing, and graphics capability in MATLAB. The product offers users shorter development cycles through virtual prototyping before physical trials and optimization instead of experimentation.ĬST MICROWAVE STUDIO provides a link between MATLAB ® and CST MWS's VBA macro language. CST MWS specializes in providing fast and accurate 3D electromagnetic simulation of high frequency problems. And as we stated earlier, this blog will cover the hardware aspect.CST MICROWAVE STUDIO ® (CST MWS) is the culmination of many years of research and development into the most efficient and accurate computational solutions to 3D electromagnetic designs. Simulation acceleration can be broken into two groups: software acceleration and hardware acceleration. Depending on the method used, different acceleration techniques can be employed to make the simulation run faster. Typical simulations are run on servers or workstation machines because they are more powerful. Postprocessing is done on the CPU after the solution is obtained, where the user further process the standard results to get something more meaningful. Processing is done using either the CPU or the Graphics Processing Unit (GPU), solving the underlying Maxwell’s Equations to give us the solution.
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This part is done using the Central Processing Unit (CPU). Preprocessing is to set up the problem, including discretizing the simulation domain and defining the excitations and boundary conditions. Before we delve into the focus of our post, it is relevant to explain that electromagnetic simulation processing can be broken into three parts: preprocessing, processing (solver run), and postprocessing.
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